Jun Zhang
0000-0003-1113-6264
Organisation
39 papers found
Refreshing results…
Dynamic Behaviours of Monodisperse Double Emulsion Formation in a Tri-Axial Capillary Device
Enhanced Blood Plasma Extraction Utilising Viscoelastic Effects in a Serpentine Microchannel
On-demand deterministic release of particles and cells using stretchable microfluidics
Tuning particle inertial separation in sinusoidal channels by embedding periodic obstacle microstructures
Multiphysics Microfluidics for Cell Manipulation and Separation: A Review
Inertial Microfluidic Purification of Floating Cancer Cells for Drug Screening and Three-Dimensional Tumor Models
Direct Measurement of the Contents, Thickness, and Internal Pressure of Molybdenum Disulfide Nanoblisters
Dean-flow-coupled elasto-inertial particle and cell focusing in symmetric serpentine microchannels
Fundamentals of Differential Particle Inertial Focusing in Symmetric Sinusoidal Microchannels
High-Throughput Separation of White Blood Cells From Whole Blood Using Inertial Microfluidics
The Continuous Concentration of Particles and Cancer Cell Line Using Cell Margination in a Groove-Based Channel
Flow rate-insensitive microparticle separation and filtration using a microchannel with arc-shaped groove arrays
High-throughput sheathless and three-dimensional microparticle focusing using a microchannel with arc-shaped groove arrays
Sheathless Dean-flow-coupled elasto-inertial particle focusing and separation in viscoelastic fluid
Hybrid microfluidics combined with active and passive approaches for continuous cell separation: Microfluidics and Miniaturization
Development of a novel magnetophoresis-assisted hydrophoresis microdevice for rapid particle ordering
Investigation of particle lateral migration in sample-sheath flow of viscoelastic fluid and Newtonian fluid
A label-free and high-throughput separation of neuron and glial cells using an inertial microfluidic platform
Three-dimensional particle focusing under viscoelastic flow based on dean-flow-coupled elasto-inertial effects
High Throughput Cell-Free Extraction of Plasma by an Integrated Microfluidic Device Combining Inertial Microfluidics and Membrane
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